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The Rutaceae Family - Order Sapindales

Homopathic Links, 2008
A thorough description is given of the Rutaceae plant family. A wide variety of sources were used including old and new masters in homeopathy and works on pharmacognosy, phytochemistry, mythology, symbolism, phylogeny and plant systematics.
exaly   +2 more sources

Introduction to Sapindales

2010
Nineteenth century botanists, such as Bentham (in Bentham and Hooker 1862) and Engler (e.g., 1931), tended to treat Sapindales and Rutales (the latter sometimes as Geraniales) as distinct orders, a concept followed by Takhtajan (2009) to the present day; however, a wider ordinal concept with Rutales included in Sapindales, as Terebinthales (Wettstein ...
K Kubitzki
exaly   +2 more sources

Molecular phylogenetics of Meliaceae (Sapindales) based on nuclear and plastid DNA sequences

American Journal of Botany, 2003
Phylogenetic analyses of Meliaceae, including representatives of all four currently recognized subfamilies and all but two tribes (32 genera and 35 species, respectively), were carried out using DNA sequence data from three regions: plastid genes rbcL, matK (partial), and nuclear 26S rDNA (partial).
Mark Chase, Martin Cheek
exaly   +4 more sources

Nortriterpenes, chromones, anthraquinones, and their chemosystematics significance in Meliaceae, Rutaceae, and Simaroubaceae (Sapindales)

Brazilian Journal of Botany, 2021
In this review, our analyses of the metabolic routes of limonoids and quassinoids—with respect to their occurrence in the families Rutaceae, Meliaceae, and Simaroubaceae—suggest a disjunction between the Simaroubaceae (characterized by quassinoids) and the Rutaceae and Meliaceae (distinguished by limonoids).
Maria Fátima das Graças Fernandes da Silva   +5 more
openaire   +1 more source

Some Features in the Anatomy of the Sapindales

Botanical Gazette, 1912
In studying the phylogeny of plants, there are certain general principles upon which all conclusions are based. One of these deals with the retention of ancestral-characteristics. A striking example of this is afforded by the anatomy of the cycads. The vegetative stem of these forms always has exclusively centrifugal metaxylem, but in the leaf petiole,
openaire   +1 more source

Khaya grandifoliola C. DC. (Meliaceae: Sapindales): Ethnobotany, phytochemistry, pharmacological properties, and toxicology

Journal of Ethnopharmacology, 2021
Khaya grandifoliola is a well-known tree species in Africa with a conservation status of 'vulnerable' due to its overexploitation by the wood industry. Several studies have recorded numerous ethnobotanical uses of this plant, as well as the scientific validation of the efficacy of extracts from different plant parts used for the treatment of various ...
Yusuf Ola Mukaila   +2 more
openaire   +2 more sources

A comprehensive review of the chemical composition and epicuticular wax morphology of the cuticle in Sapindales

Brazilian Journal of Botany, 2021
Cuticular waxes play an important role in plant survival in terrestrial environments. They are part of the cuticle and form a hydrophobic barrier associated with a decline in water loss through cuticular transpiration. Data on the chemical and morphological composition of cuticular waxes in Sapindales have been collected for more than 5th years.
Lucas Paradizo Roma   +1 more
openaire   +1 more source

Floral organogenesis of Delavaya toxocarpa (Sapindaceae; Sapindales)

Journal of Systematics and Evolution, 2009
Abstract  The floral organogenesis and development of Delavaya toxocarpa Franch. (Sapindaceae) were studied under scanning electron microscope and light microscope to determine its systematic position within Sapindaceae. Flowers arise in terminal thyrses. The sepal primordia initiate in a spiral (2/5) sequence, which are not synchronous. The five petal
Li‐Min CAO, Nian‐He XIA
openaire   +1 more source

Physical dormancy in seeds of Dodonaea viscosa (Sapindales, Sapindaceae) from Hawaii

Seed Science Research, 2004
Dormancy in seeds ofDodonaea viscosais due to a water-impermeable seed coat (physical dormancy, PY). Thus, mechanically scarified seeds imbibed water (c.95% increase in mass) and germinated to high percentages over a wide range of temperature regimes in both white light and darkness, whereas non-scarified seeds did not take up water. Dry heat at 80–160°
Jerry M. Baskin   +4 more
openaire   +1 more source

Editorial: Diversity and evolution of Neotropical Sapindales

Brazilian Journal of Botany, 2022
Diego Demarco   +2 more
openaire   +1 more source

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